Study of on-chip cavity magnon polariton devices

dc.contributor.authorKaur, Sandeep
dc.contributor.examiningcommitteePage, John (Physics and Astronomy) Bridges, Gregory (Engineering)en_US
dc.contributor.supervisorHu, Can-Ming (Physics and Astronomy)en_US
dc.date.accessioned2017-08-14T15:24:02Z
dc.date.available2017-08-14T15:24:02Z
dc.date.issued2016en_US
dc.date.issued2016en_US
dc.date.issued2017en_US
dc.degree.disciplinePhysics and Astronomyen_US
dc.degree.levelMaster of Science (M.Sc.)en_US
dc.description.abstractThe emerging field of Cavity Spintronics studies the strong coupling of light (photon) with matter (magnons) which leads to the generation of cavity magnon polaritons (CMP). This strong coupling allows energy to be efficiently exchanged between photons and magnons and hence could be used to develop quantum transducers and long-lifetime multimode quantum memories. The CMP systems can be made more suitable for potential practical applications by using planar cavities. Here, a planar tunable cavity was first fabricated that can be used for the on-chip observation of CMP. This planar cavity can also be adapted to be used as a source of pseudo-magnons to achieve pseudo-CMP which could be used to fabricate dynamic filters and to switch devices. In planar CMP systems, a quantitative simulation of the non-resonant radiation damping was also performed by modifying the traditional coupled matrix model to improve our understanding of this coupled system.en_US
dc.description.noteOctober 2017en_US
dc.identifier.citationAPAen_US
dc.identifier.citationAPAen_US
dc.identifier.citationAPAen_US
dc.identifier.urihttp://hdl.handle.net/1993/32347
dc.language.isoengen_US
dc.publisherApplied Physics Lettersen_US
dc.publisherJournal of Physics D. Applied Physicsen_US
dc.publisherApplied Physics Lettersen_US
dc.rightsopen accessen_US
dc.subjectPhysicsen_US
dc.titleStudy of on-chip cavity magnon polariton devicesen_US
dc.typemaster thesisen_US
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